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Submarine Volcanism Identification with Neural Networks
Volcanic feature identification on topographic maps is an emerging area that can leverage advanced machine learning techniques. However, the field faces challenges due to the scarcity of current labeled volcanic data, class imbalances, and limitations in existing models.Jialei Qiu +3 more
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Noble gases in submarine pillow volcanic glasses
Earth and Planetary Science Letters, 1983Abstract Fifteen submarine glasses from the East Pacific Rise (CYAMEX), the Kyushu-Palau Ridge (DSDP Leg 59) and the Nauru Basin (DSDP Leg 61) were analysed for noble gas contents and isotopic ratios. Both the East Pacific Rise and Kyushu-Palau Ridge samples showed Ne excess relative to Ar and a monotonic decrease from Xe to Ar when compared with air
M. Ozima, S. Zashu
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Interacting Volcanic, Tectonic, and Submarine Geohazards in the Hellenic Volcanic Arc
The Hellenic Volcanic Arc (HVA) is one of the most geodynamically active regions in the Mediterranean, where crustal extension, magma migration, and active faulting interact to generate interconnected and cascading geohazards. These include earthquakes, explosive volcanic eruptions, caldera and flank collapses, submarine landslides, tsunamis, and ...Paraskevi Nomikou +7 more
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Submarine Hydrothermal Venting Related to Volcanic Arcs
2005Abstract Volcanic arcs that have a submarine component (n = 21) include both intra-oceanic and island arcs. Combined, they have a total length of almost 22,000 km with ~93 percent in the Pacific region. We estimate that 696 volcanoes occur along these arcs, with at least 209 (30%) being submarine. The 13 best studied arcs total 14,260
Cornel E.J. de Ronde +3 more
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The submarine morphology of Surtsey volcanic group
Surtsey research, 1992John O. Norrman, Ulf Erlingsson
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